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Estimation of load history by residual stress relaxation

机译:残余应力松弛估计负荷历史

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Focusing on the impact of machining on structural integrity and fatigue life of components the surface and subsurface properties are of major importance. It is well known that machining induced residual stresses have a significant influence on the fatigue life of a component. Due to thermal and mechanical loads during a product's life cycle these stresses relax, which is undesired in most cases. The presented approach utilizes relaxations due to mechanical load to estimate the load history of a component. It is intended to qualify residual stress relaxation as a load sensor and to determine the limits of this approach. Therefore, it is demonstrated, how the residual stress state induced by turning of AISI 1060 determines the critical load causing relaxation. Subsequently, the influence of load stress and the number of load cycles is used to build up a model. The presented approach accesses load information from mass production components. Until now, this information is typically limited to prototypical developments or high price parts equipped with external sensors. One application of life cycle data is condition-based maintenance. This technology allows to extend service intervals and prevent a premature replacement of undamaged components. Thus, cost and resource efficiency are augmented. It is demonstrated that based on the changes of residual stress, possible mechanical loads and number of load cycle combinations can be identified. The changes are used to estimate the experienced loads.
机译:专注于加工对部件结构完整性和疲劳寿命的影响,表面和地下特性具有重要意义。众所周知,加工诱导的残余应力对组分的疲劳寿命具有显着影响。由于产品的生命周期内的热和机械负载,这些应力放松,这在大多数情况下都是不希望的。由于机械负荷,所提出的方法利用弛豫来估计部件的负载历史。它旨在限定残留的应力松弛作为负载传感器,并确定这种方法的限制。因此,证明了通过转动AISI 1060引起的残余应力状态来确定引起弛豫的临界负荷。随后,使用负载应力的影响和负载循环的数量来构建模型。所提出的方法从大规模生产组件访问负载信息。到目前为止,该信息通常仅限于配备外部传感器的原型开发或高价部件。生命周期数据的一个应用是基于条件的维护。该技术允许扩展服务间隔并防止过早更换未损坏的组件。因此,增强成本和资源效率。证明基于残余应力的变化,可以识别可能的机械负载和负载周期组合的数量。更改用于估计经验丰富的负载。

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